1. Arnold, W. M., A. G. Gessner, and U. Zimmermann. 1993. Dielectric measurements on electro-manipulation media. Biochim Biophys Acta 1157:32-44.
2. Benz, R., F. Beckers, and U. Zimmermann. 1979. Reversible electrical breakdown of lipid bilayer membranes: a charge-pulse relaxation study. Journal of Membrane Biology 48:181-204.
3. Benz, R., and U. Zimmermann. 1980. Pulse-length dependence of the electrical breakdown in lipid bilayer membranes. Biochimica et Biophysica Acta 597:637-642.
4. Bernardi, P. 1999. Mitochondrial transport of cations: channels, exchangers, and permeability transition. Physiological Reviews 79:1127-1155.
5. Bernardi, P., L. Scorrano, R. Colonna, V. Petronilli, and F. Di Lisa. 1999. Mitochondria and cell death ---.mechanistic aspects and methodological issues. European Journal of Biochemistry 264:687-701.
6. Bilska, O., K. A. DeBruin, and W. Krassowska. 2000. Theoretical modeling of the effects of shock duration, frequency, and strength on the degree of electroporation. Bioelectrochemistry and Bioenergetics 51:133-143.
7. Bratton, D. L., V. A. Fadok, D. A. Richter, J. M. Kailey, L. A. Guthrie, and P. M. Henson. 1997. Appearance of phosphatidylserine on apoptotic cells requires calcium-mediated nonspecific flip-flop and is enhanced by loss of the aminophospholipid translocase. J Biol Chem 272:26159-65.
8. Cossarizza, A., M. Baccarani-Contri, G. Kalashnikova, and C. Franceschi. 1993. A new method for the cytofluorometric analysis of mitochondrial membrane potential using the J-aggregate forming lipophilic cation 5,5',6,6'-tetrachloro-1,1',3,3'-tetraethylbenzimidazolcarbocyanine iodide (JC-1). Biochemical and Biophysical Research Communications 197:40-45.
9. Cossarizza, A. 1997, posting date. Measure of mitochondrial membrane potential (Dy) with the fluorescent probe JC-1. [Online.]
10. Coster, H. G. L., and U. Zimmermann. 1975. Dielectric breakdown in the membranes of Valonia utricularis: the role of energy dissipation. Biochimica et Biophysica Acta 382:410-418.
11. DeBruin, K. A., and W. Krassowska. 1999. Modeling electroporation in a single cell. I. Effects of field strength and rest potential. Biophysical Journal 77:1213-1224.
12. DeBruin, K. A., and W. Krassowska. 1999. Modeling electroporation in a single cell. II. Effects of ionic concentrations. Biophysical Journal 77:1225-1233.
13. Ermolina, I., Y. Polevaya, Y. Feldman, B.-Z. Ginzburg, and M. Schlesinger. 2001. Study of normal and malignant white blood cells by time domain dielectric spectroscopy. IEEE Transactions on Dielectrics and Electrical Insulation 8:253-261.
14. Fadok, V. A., A. de Cathelineau, D. L. Daleke, P. M. Henson, and D. L. Bratton. 2001. Loss of phospholipid asymmetry and surface exposure of phosphatidylserine is required for phagocytosis of apoptotic cells by macrophages and fibroblasts. J Biol Chem 276:1071-7.
15. Farkas, D. L., M. Wei, P. Febbroriello, J. H. Carson, and L. M. Loew. 1989. Simultaneous imaging of cell and mitochondrial membrane potentials. Biophysical Journal 56:1053-1069.
16. Freeman, S. A., M. A. Wang, and J. C. Weaver. 1994. Theory of electroporation of planar bilayer membranes: predictions of the aqueous area, change in capacitance, and pore-pore separation. Biophysical Journal 67:42-56.
17. Gabriel, B., and J. Teissie. 1999. Time courses of electropermeabilization observed by millisecond imaging of membrane property changes during the pulse. Biophysical Journal 76:2158-2165.
18. Goldstein, J. C., N. J. Waterhouse, P. Juin, G. I. Evan, and D. R. Green. 2000. The coordinate release of cytochrome c during apoptosis is rapid, complete, and kinetically invariant. Nature Cell Biology 2:156-162.
19. Green, D. R., and J. C. Reed. 1998. Mitochondria and apoptosis. Science 281:1309-12.
20. Gross, D., L. M. Loew, and W. W. Webb. 1986. Optical imaging of cell membrane potential changes induced by applied electric fields. Biophysical Journal 50:339-348.
21. Groves, J. T., S. G. Boxer, and H. M. McConnell. 2000. Lateral reorganization of fluid lipid membranes in response to the electric field produced by a buried charge. Journal of Physical Chemistry B 104:11409-11415.
22. Hammill, A. K., J. W. Uhr, and R. H. Scheuermann. 1999. Annexin V staining due to loss of membrane asymmetry can be reversible and precede commitment to apoptotic death. Exp Cell Res 251:16-21.
23. Hofmann, F., H. Ohnimus, C. Scheller, W. Strupp, U. Zimmermann, and C. Jassoy. 1999. Electric field pulses can induce apoptosis. Journal of Membrane Biology 169:103-109.
24. Huser, J., C. E. Rechenmacher, and L. A. Blatter. 1998. Imaging the permeability pore transition in single mitochondria. Biophysical Journal 74:2129-2137.
25. Ibuki, Y., A. Suzuki, and R. Goto. 2001. UVA irradiation induces energy-independent phospholipid-flip in mammalian plasma membrane. Photochemistry and Photobiology 73:513-517.
26. Joshi, R. P., and K. H. Schoenbach. 2000. Electroporation dynamics in biological cells subjected to ultrafast electrical pulses: a numerical simulation study. Physical Review E 62:1025-1033.
27. Joshi, R. P., Q. Hu, R. Aly, K. H. Schoenbach, and H. P. Hjalmarson. 2001. Self-consistent simulations of electroporation dynamics in biological cells subjected to ultrashort electrical pulses. Physical Review E 64:011913.
28. Kinosita, K., I. Ashikawa, N. Saita, H. Yoshimura, H. Itoh, K. Nagayama, and A. Ikegami. 1988. Electroporation of cell membrane visualized under a pulsed-laser fluorescence microscope. Biophysical Journal 53:1015-1019.
29. Kotnik, T., and D. Miklavcic. 2000. Theoretical evaluation of the distributed power dissipation in biological cells exposed to electric fields. Bioelectromagnetics 21:385-394.
30. Krassowska, W., and J. C. Neu. 1994. Response of a single cell to an external electric field. Biophysical Journal 66:1768-1776.
31. Kunzelmann-Marche, C., J.-M. Freyssinet, and M. C. Martinez. 2001. Regulation of phosphatidylserine transbilayer redistribution by store-operated Ca2+ entry --- role of actin cytoskeleton. Journal of Biological Chemistry 276:5134-5139.
32. Lockshin, R. A., and Z. Zakeri. 2001. Programmed cell death and apoptosis: origins of the theory. Nat Rev Mol Cell Biol 2:545-50.
33. Marquez, V. O., G. S. Mittal, and M. W. Griffiths. 1997. Destruction and inhibition of bacterial spores by high voltage pulsed electric field. Journal of Food Science 62:399-401.
34. Martinou, J.-C., and D. R. Green. 2001. Breaking the mitochondrial barrier. Nature Reviews Molecular Cell Biology 2:63-67.
35. Moncada, S., and J. D. Erusalimsky. 2002. Does nitric oxide modulate mitochondrial energy generation and apoptosis? Nature Reviews Molecular Cell Biology 3:214-220.
36. Muller, K. J., V. L. Sukhorukov, and U. Zimmermann. 2001. Reversible electropermeabilization of mammalian cells by high-intensity, ultra-short pulses of submicrosecond duration. Journal of Membrane Biology 184:161-170.
37. Mussauer, H., V. L. Sukhorukov, A. Haase, and U. Zimmermann. 1999. Resistivity of red blood cells against high-intensity, short-duration, electric field pulses induced by chelating agents. Journal of Membrane Biology 170:121-133.
38. Parsegian, A. 1969. Energy of an ion crossing a low dielectric membrane: solutions to four relevant electrostatic problems. Nature 221:844-846.
39. Petronilli, V., C. Cola, and P. Bernardi. 1993. Modulation of the mitochondrial cyclosporin A-sensitive permeability transition pore. II. The minimal requirements for pore induction underscore a key role for transmembrane electrical potential, matrix pH, and matrix Ca2+. Journal of Biological Chemistry 268:1011-1016.
40. Petronilli, V., G. Miotto, M. Canton, M. Brini, R. Colonna, P. Bernardi, and F. Di Lisa. 1999. Transient and long-lasting openings of the mitochondrial permeability transition pore can be monitored directly in intact cells by changes in mitochondrial calcein fluorescence. Biophysical Journal 76:725-734.
41. Petronilli, V., D. Penzo, L. Scorrano, P. Bernardi, and F. Di Lisa. 2001. The mitochondrial permeability transition, release of cytochrome c and cell death --- Correlation with the duration of pore openings in situ. Journal of Biological Chemistry 276:12030-12034.
42. Polevaya, Y., I. Ermolina, M. Schlesinger, B.-Z. Ginzburg, and Y. Feldman. 1999. Time domain dielectric spectroscopy study of human cells. II. Normal and malignant white blood cells. Biochimica et Biophysica Acta 1419:257-271.
43. Polk, C. 2000. Biological applications of large electric fields: some history and fundamentals. IEEE Transactions on Plasma Science 28:6-14.
44. Rao, R. V., E. Hermel, S. Castro-Obregon, G. del Rio, L. M. Ellerby, H. M. Ellerby, and D. E. Bredesen. 2001. Coupling endoplasmic reticulum stress to the cell death program. Mechanism of caspase activation. J Biol Chem 276:33869-74.
45. Reed, J. C. 1997. Cytochrome c: can't live with it -- can't live without it. Cell 91:559-562.
46. Renz, A., W. E. Berdel, M. Kreuter, C. Belka, K. Schulze-Osthoff, and M. Los. 2001. Rapid extracellular release of cytochrome c is specific for apoptosis and marks cell death in vivo. Blood 98:1542-8.
47. Rols, M.-P., and J. Teissie. 1990. Electropermeabilization of mammalian cells: quantitative analysis of the phenomenon. Biophysical Journal 58:1089-1098.
48. Roucou, X., M. Prescott, R. J. Devenish, and P. Nagley. 2000. A cytochrome c-GFP fusion is not released from mitochondria into the cytoplasm upon expression of Bax in yeast cells. FEBS Lett 471:235-9.
49. Salvioli, S., A. Ardizzoni, C. Franceschi, and A. Cossarizza. 1997. JC-1, but not DiOC6(3) or rhodamine 123, is a reliable fluorescent probe to assess DY changes in intact cells: implications for studies on mitochondrial functionality during apoptosis. FEBS Letters 411:77-82.
50. Schoenbach, K. H., F. E. Peterkin, R. W. Alden, and S. J. Beebe. 1997. The effect of pulsed electric fields on biological cells: experiments and applications. IEEE Transactions on Plasma Science 25:284-292.
51. Schoenbach, K. H., R. P. Joshi, R. H. Stark, F. C. Dobbs, and S. J. Beebe. 2000. Bacterial decontamination of liquids with pulsed electric fields. IEEE Transactions on Dielectrics and Electrical Insulation 7:637-645.
52. Schoenbach, K. H., J. Deng, G. Yu, R. H. Stark, S. J. Beebe, and E. S. Buescher. 2000. Presented at the Infrared and Millimeter Waves.
53. Schoenbach, K. H., S. J. Beebe, and E. S. Buescher. 2001. Intracellular effect of ultrashort electrical pulses. Bioelectromagnetics 22:440-448.
54. Sopkova, J., J. Gallay, M. Vincent, P. Pancoska, and A. Lewit-Bentley. 1994. The dynamic behavior of annexin V as a function of calcium binding: a circular dichroism, UV absorption, and steady-state and time-resolved fluorescence study. Biochemistry 33:4490-4499.
55. Sugar, I. P. 1979. A theory of the electric field-induced phase transition of phospholipid bilayers. Biochimica et Biophysica Acta 556:72-85.
56. Susin, S. A., N. Zamzami, and G. Kroemer. 1998. Mitochondria as regulators of apoptosis: doubt no more. Biochimica et Biophysica Acta 1366:151-165.
57. Teissie, J., and C. Ramos. 1998. Correlation between electric field pulse induced long-lived permeabilization and fusogenicity in cell membranes. Biophysical Journal 74:1889-1898.
58. Thornberry, N. A., and Y. Lazebnik. 1998. Caspases: enemies within. Science 281:1312-6.
59. Weaver, J. C., and Y. A. Chizmadzhev. 1996. Theory of electroporation: a review. Bioelectrochemistry and Bioenergetics 41:135-160.
60. Weaver, J. C. 2000. Electroporation of cells and tissues. IEEE Transactions on Plasma Science 28:24-33.
61. Zamzami, N., and G. Kroemer. 2001. The mitochondrion in apoptosis --- how Pandora's box opens. Nature Reviews Molecular Cell Biology 2:67-71.
62. Zimmermann, U., G. Pilwat, and F. Riemann. 1974. Dielectric breakdown of cell membranes. Biophysical Journal 14:881-899.
63. Zimmermann, U. 1996. The effect of high intensity electric field pulses on eukaryotic cell membranes: fundamentals and applications. In U. Zimmermann and G. A. Neil (ed.), Electromanipulation of Cells. CRC, Boca Raton, FL.
64. Zimmermann, U., U. Friedrich, H. Mussauer, P. Gessner, K. Hamel, and V. L. Sukhorukov. 2000. Electromanipulation of mammalian cells: fundamentals and application. IEEE Transactions on Plasma Science 28:78-82.
65. Zoratti, M., and I. Szabo. 1995. The mitochondrial permeability transition. Biochimica et Biophysica Acta 1241:139-176.